Showing posts with label Mechanical. Show all posts
Showing posts with label Mechanical. Show all posts

Wednesday, December 6, 2023

Statics Formulas and Problems Engineering Mechanics : bibliography, nomenclature, equilibrium, center of gravity, center of mass, centroids, support reactions, trusses, beams, frames, arches, cables, work and potential energy, static and kinetic friction, moments of inertia, force with a common point of application in a plane, general systems of forces in space, center of mass, location of centroids, spatial structures, cable subjected to vertical loads, cable subjected to self-weight, stability of an equilibrium position.
Mechanics and Thermodynamics of Propulsion : the jet propulsion principle, mechanics and thermodynamics of fluid flow, steady one-dimensional flow of a perfect gas, boundary layer mechanics and heat transfer, air breathing engines, thermodynamics of aircraft jet engines, aerothermodynamics of inlets, combustors, and nozzles, axial compressors, axial turbines, the centrifugal compressor, rocket engines, performance of rocket vehicles, chemical rocket thrust chambers, chemical rocket propellants, turbomachinery for liquid propellant rockets, electrical rocket propulsion, fundamental equations.
Practical Stress Analysis in Engineering Design : fundamental relations and concepts, forces and force systems, simple stress and strain, hooke’s law and material strength, stress in two and three dimensions, strain in two and three dimensions, curvilinear coordinates, straight and long structural components, beams, rods, bars, bending stresses, displacement from bending, beam analysis using singularity, beam bending formulas for common configurations, torsion and twisting of rods, special beam geometries, thick beams, curved beams, stability and shear center, plates, panels, flanges, brackets, dynamic loadings, fatigue, fracture, piping and pressure vessels, advanced and specialized problems.
Mechanics and Strength of Materials : stress tensor, two dimensional analysis of the stress tensor, strain tensor, constitutive law, yielding and rupture laws, fundamental concepts of strength of materials, axially loaded members, bending moment, shear force, longitudinal shear force, bending deflections, torsion, structural stability, energy theorems, elementary analysis of impact loads, stability analysis by the displacement method, pure plane bending, composed circular bending, principle of superposition, equation analysis of the strain tensor, principal stresses and directions.
Mechanical Engineering : statics, vector algebra, dynamics, mechanics of materials, theory of mechanisms, machine components, theory of vibration, principles of heat transfer, fluid dynamics, control, differential equations and systems of differential equations, mapping contours in the s-plane, laplace transform, nonlinear controllers by feedback linearization, design of closed loop control system by frequently methods, design of closed loop control systems by pole-zero methods, hydraulics, fluids fundamentals, convection heat transfer, machine tool vibrations, rolling bearings, springs, gears, screws, position analysis, fatigue, deflection and stiffness, dynamics of rigid body.
Mechanical Engineering Principles : revision of mathematics, statics and strength of materials, simultaneous equations, compressive force, shear force, stress, strain, elasticity, limit of proportionality and elastic limit, hooke’s law, modulus of rigidity, thermal strain, compound bars, worked problems on tensile testing, scalar and vector quantities, first and second moments, of areas, bending moment and shear force diagrams, uniformly distributed loads, forces in structures, graphical method, worked problems on mechanisms, simply supported beams, resultant of coplanar forces by calculation.
Mechanical Engineering Fundamental : introduction to commonly used machine tools in a workshop, lathe, shaper, planer, milling machine, drilling machine, slotter, introduction to metal cutting, cutting tool nomenclature, cutting fluid, basic concepts of thermodynamics, thermodynamic properties, properties of steam and steam generators boilers, methods of determining the dryness fraction of steam, boiler.
Mechanical Design Engineering : design process, systematic design, double diamond, design for six sigma, design optimization, project management, conceptual design, concurrent engineering, definition of product requirements, evaluation, testing, requirements capture, design analysis, prototype, conceive, design, implement, operate.
Mechanical and Electrical Design of Pumping Stations : design procedures, materials of construction, design memorandum requirements, operation and maintenance manuals, pumping equipment, pumping conditions, discharge system, engines and gears, miscellaneous equipment, power distribution equipment, control equipment, station wiring, station and equipment grounding, surge protection, electrical equipment environmental protection, station service electrical system, pump drive selection, pump and station hydraulic tests, earthquake considerations, power supply, motors.
Machine Elements in Mechanical Design Solution : nature of mechanical design, stress and deformation analysis, combined stresses and mohr’s circle, design for different types of loading, columns, belt drives and chain drives, kinematics of gears, spur gear design, helical gears, bevel gears, worm gearing, keys, couplings, seals, shaft design, tolerances and fits, rolling contact bearings, plain surface bearings, linear motion elements, springs, fasteners, machine frames, bolted connections, welded joints, electric motors and controls, motion control.
Mechanical Engineering Calculations : cycle analyses, choosing best options for boosting combined-cycle plant output, selecting gas-turbine heat-recovery boilers, gas-turbine cycle efficiency analysis and output determination, power plant performance based on test data, finding cogeneration system efficiency and conventional steam cycle, bleed steam regenerative cycle layout, bleed regenerative steam cycle analysis, mechanical drive steam turbine power output analysis, condensing steam turbine power output analysis, gas turbine combustion chamber inlet air temperature, constant pressure steam process, constant volume steam process, constant temperature steam process.
Mechanical Design : materials, beams and structures, latches, locks, and fastenings, springs, power transmission elements and mechanisms, drives and controls, design data on production methods, length of material for 90-deg, moment of inertia of a prism about the axis, determining centrifugal force, forces in toggle joint with equal arms, mean cooling temperature, beams and structures, allowable stresses for chord sections, smooth skin with reinforcing stringers, stresses in cantilever beams, rectangular moments of inertia and section moduli, locking devices, retaining and locking detents, wire locks and snap rings, winding connection diagrams for multispeed motors, multispeed motors, variable torque, key diagrams.
Design Engineers Handbook : beams, stresses induced by bending, deflection in beams, torsion of solid sections, thin-walled closed section, torsional failure of tubes, design and analysis of lugs and shear pins, analysis of lugs with axial loading, bearing at lug-to-pin or bush interface, bush analysis, oil holes, mechanical fasteners, torque tension relationship, limits and fits, thick cylinders, compound cylinders, the design and analysis of helical compression springs manufactured from round wire, two dimensional stress analysis, theories of elastic failure, introduction to experimental stress analysis, introduction to fatigue and fracture, introduction to geared systems, introduction to cams and follower.
Introduction to Mechanical Engineering : the elements of mechanical engineering, mechanical design, technical problem-solving and communication skills, forces in structures and machines, materials and stresses, fluids engineering, thermal and energy systems, motion and power transmission, angular velocity, rotational work and power, spur gears, rack and pinion, bevel gears, helical gears, worm gears, speed, torque, power, simple geartrain, compound, design application rolling element bearing.
Basics of Mechanical : what is mechanical engineering, pounds force and pounds mass, temperature, scrutinizing analytical formulas and results, forces in structures, degrees of freedom, moments of forces, type of forces and moments of force, stresses, strains and material properties, pressure vessels, bending of beams, buckling of columns, fluid mechanics, equations of fluid motion, viscous effects, thermal and energy systems, conservation of energy first law of thermodynamics, second law of thermodynamics, engines cycles and efficiency.
Advanced Mechanics of Solids : analysis of stress, analysis of strain, stress strain relations for linearly elastic solids, theories of failure or yield criteria and introduction to ideally plastic solid, energy methods, rending of beams, torsion, axisymmetric problems, thermal stresses, elastic stability, beam columns, general treatment of column stability problems, energy methods for buckling problems, introduction to composite materials, introduction to stress concentration and fracture mechanics, design consideration, first theorem of castigliano, change in direction of a linear element.